frr/zebra/rtadv.c

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/* Router advertisement
* Copyright (C) 2005 6WIND <jean-mickael.guerin@6wind.com>
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* Copyright (C) 1999 Kunihiro Ishiguro
*
* This file is part of GNU Zebra.
*
* GNU Zebra is free software; you can redistribute it and/or modify it
* under the terms of the GNU General Public License as published by the
* Free Software Foundation; either version 2, or (at your option) any
* later version.
*
* GNU Zebra is distributed in the hope that it will be useful, but
* WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with GNU Zebra; see the file COPYING. If not, write to the Free
* Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
* 02111-1307, USA.
*/
#include <zebra.h>
#include "memory.h"
#include "zebra_memory.h"
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#include "sockopt.h"
#include "thread.h"
#include "if.h"
#include "stream.h"
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#include "log.h"
#include "prefix.h"
#include "linklist.h"
#include "command.h"
#include "privs.h"
#include "vrf.h"
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#include "zebra/interface.h"
#include "zebra/rtadv.h"
#include "zebra/debug.h"
#include "zebra/rib.h"
#include "zebra/zserv.h"
#include "zebra/zebra_ns.h"
#include "zebra/zebra_vrf.h"
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extern struct zebra_privs_t zserv_privs;
#if defined (HAVE_IPV6) && defined (HAVE_RTADV)
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#ifdef OPEN_BSD
#include <netinet/icmp6.h>
#endif
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/* If RFC2133 definition is used. */
#ifndef IPV6_JOIN_GROUP
#define IPV6_JOIN_GROUP IPV6_ADD_MEMBERSHIP
#endif
#ifndef IPV6_LEAVE_GROUP
#define IPV6_LEAVE_GROUP IPV6_DROP_MEMBERSHIP
#endif
#define ALLNODE "ff02::1"
#define ALLROUTER "ff02::2"
enum rtadv_event {RTADV_START, RTADV_STOP, RTADV_TIMER,
RTADV_TIMER_MSEC, RTADV_READ};
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static void rtadv_event (struct zebra_ns *, enum rtadv_event, int);
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static int if_join_all_router (int, struct interface *);
static int if_leave_all_router (int, struct interface *);
static int
rtadv_increment_received(struct zebra_ns *zns, ifindex_t *ifindex)
{
int ret = -1;
struct interface *iface;
struct zebra_if *zif;
iface = if_lookup_by_index_per_ns (zns, *ifindex);
if (iface && iface->info)
{
zif = iface->info;
zif->ra_rcvd++;
ret = 0;
}
return ret;
}
static int
rtadv_recv_packet (struct zebra_ns *zns, int sock, u_char *buf, int buflen,
struct sockaddr_in6 *from, ifindex_t *ifindex,
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int *hoplimit)
{
int ret;
struct msghdr msg;
struct iovec iov;
struct cmsghdr *cmsgptr;
struct in6_addr dst;
char adata[1024];
/* Fill in message and iovec. */
msg.msg_name = (void *) from;
msg.msg_namelen = sizeof (struct sockaddr_in6);
msg.msg_iov = &iov;
msg.msg_iovlen = 1;
msg.msg_control = (void *) adata;
msg.msg_controllen = sizeof adata;
iov.iov_base = buf;
iov.iov_len = buflen;
/* If recvmsg fail return minus value. */
ret = recvmsg (sock, &msg, 0);
if (ret < 0)
return ret;
for (cmsgptr = ZCMSG_FIRSTHDR(&msg); cmsgptr != NULL;
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cmsgptr = CMSG_NXTHDR(&msg, cmsgptr))
{
/* I want interface index which this packet comes from. */
if (cmsgptr->cmsg_level == IPPROTO_IPV6 &&
cmsgptr->cmsg_type == IPV6_PKTINFO)
{
struct in6_pktinfo *ptr;
ptr = (struct in6_pktinfo *) CMSG_DATA (cmsgptr);
*ifindex = ptr->ipi6_ifindex;
memcpy(&dst, &ptr->ipi6_addr, sizeof(ptr->ipi6_addr));
}
/* Incoming packet's hop limit. */
if (cmsgptr->cmsg_level == IPPROTO_IPV6 &&
cmsgptr->cmsg_type == IPV6_HOPLIMIT)
{
int *hoptr = (int *) CMSG_DATA (cmsgptr);
*hoplimit = *hoptr;
}
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}
rtadv_increment_received(zns, ifindex);
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return ret;
}
#define RTADV_MSG_SIZE 4096
/* Send router advertisement packet. */
static void
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rtadv_send_packet (int sock, struct interface *ifp)
{
struct msghdr msg;
struct iovec iov;
struct cmsghdr *cmsgptr;
struct in6_pktinfo *pkt;
struct sockaddr_in6 addr;
static void *adata = NULL;
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unsigned char buf[RTADV_MSG_SIZE];
struct nd_router_advert *rtadv;
int ret;
int len = 0;
struct zebra_if *zif;
struct rtadv_prefix *rprefix;
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u_char all_nodes_addr[] = {0xff,0x02,0,0,0,0,0,0,0,0,0,0,0,0,0,1};
struct listnode *node;
u_int16_t pkt_RouterLifetime;
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/*
* Allocate control message bufffer. This is dynamic because
* CMSG_SPACE is not guaranteed not to call a function. Note that
* the size will be different on different architectures due to
* differing alignment rules.
*/
if (adata == NULL)
{
/* XXX Free on shutdown. */
adata = malloc(CMSG_SPACE(sizeof(struct in6_pktinfo)));
if (adata == NULL)
zlog_err("rtadv_send_packet: can't malloc control data");
}
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/* Logging of packet. */
if (IS_ZEBRA_DEBUG_PACKET)
zlog_debug ("%s(%u): Tx RA, socket %u",
ifp->name, ifp->ifindex, sock);
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/* Fill in sockaddr_in6. */
memset (&addr, 0, sizeof (struct sockaddr_in6));
addr.sin6_family = AF_INET6;
#ifdef SIN6_LEN
addr.sin6_len = sizeof (struct sockaddr_in6);
#endif /* SIN6_LEN */
addr.sin6_port = htons (IPPROTO_ICMPV6);
IPV6_ADDR_COPY (&addr.sin6_addr, all_nodes_addr);
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/* Fetch interface information. */
zif = ifp->info;
/* Make router advertisement message. */
rtadv = (struct nd_router_advert *) buf;
rtadv->nd_ra_type = ND_ROUTER_ADVERT;
rtadv->nd_ra_code = 0;
rtadv->nd_ra_cksum = 0;
rtadv->nd_ra_curhoplimit = 64;
/* RFC4191: Default Router Preference is 0 if Router Lifetime is 0. */
rtadv->nd_ra_flags_reserved =
zif->rtadv.AdvDefaultLifetime == 0 ? 0 : zif->rtadv.DefaultPreference;
rtadv->nd_ra_flags_reserved <<= 3;
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if (zif->rtadv.AdvManagedFlag)
rtadv->nd_ra_flags_reserved |= ND_RA_FLAG_MANAGED;
if (zif->rtadv.AdvOtherConfigFlag)
rtadv->nd_ra_flags_reserved |= ND_RA_FLAG_OTHER;
if (zif->rtadv.AdvHomeAgentFlag)
rtadv->nd_ra_flags_reserved |= ND_RA_FLAG_HOME_AGENT;
/* Note that according to Neighbor Discovery (RFC 4861 [18]),
* AdvDefaultLifetime is by default based on the value of
* MaxRtrAdvInterval. AdvDefaultLifetime is used in the Router Lifetime
* field of Router Advertisements. Given that this field is expressed
* in seconds, a small MaxRtrAdvInterval value can result in a zero
* value for this field. To prevent this, routers SHOULD keep
* AdvDefaultLifetime in at least one second, even if the use of
* MaxRtrAdvInterval would result in a smaller value. -- RFC6275, 7.5 */
pkt_RouterLifetime = zif->rtadv.AdvDefaultLifetime != -1 ?
zif->rtadv.AdvDefaultLifetime :
MAX (1, 0.003 * zif->rtadv.MaxRtrAdvInterval);
rtadv->nd_ra_router_lifetime = htons (pkt_RouterLifetime);
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rtadv->nd_ra_reachable = htonl (zif->rtadv.AdvReachableTime);
rtadv->nd_ra_retransmit = htonl (0);
len = sizeof (struct nd_router_advert);
/* If both the Home Agent Preference and Home Agent Lifetime are set to
* their default values specified above, this option SHOULD NOT be
* included in the Router Advertisement messages sent by this home
* agent. -- RFC6275, 7.4 */
if
(
zif->rtadv.AdvHomeAgentFlag &&
(zif->rtadv.HomeAgentPreference || zif->rtadv.HomeAgentLifetime != -1)
)
{
struct nd_opt_homeagent_info *ndopt_hai =
(struct nd_opt_homeagent_info *)(buf + len);
ndopt_hai->nd_opt_hai_type = ND_OPT_HA_INFORMATION;
ndopt_hai->nd_opt_hai_len = 1;
ndopt_hai->nd_opt_hai_reserved = 0;
ndopt_hai->nd_opt_hai_preference = htons(zif->rtadv.HomeAgentPreference);
/* 16-bit unsigned integer. The lifetime associated with the home
* agent in units of seconds. The default value is the same as the
* Router Lifetime, as specified in the main body of the Router
* Advertisement. The maximum value corresponds to 18.2 hours. A
* value of 0 MUST NOT be used. -- RFC6275, 7.5 */
ndopt_hai->nd_opt_hai_lifetime = htons
(
zif->rtadv.HomeAgentLifetime != -1 ?
zif->rtadv.HomeAgentLifetime :
MAX (1, pkt_RouterLifetime) /* 0 is OK for RL, but not for HAL*/
);
len += sizeof(struct nd_opt_homeagent_info);
}
if (zif->rtadv.AdvIntervalOption)
{
struct nd_opt_adv_interval *ndopt_adv =
(struct nd_opt_adv_interval *)(buf + len);
ndopt_adv->nd_opt_ai_type = ND_OPT_ADV_INTERVAL;
ndopt_adv->nd_opt_ai_len = 1;
ndopt_adv->nd_opt_ai_reserved = 0;
ndopt_adv->nd_opt_ai_interval = htonl(zif->rtadv.MaxRtrAdvInterval);
len += sizeof(struct nd_opt_adv_interval);
}
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/* Fill in prefix. */
for (ALL_LIST_ELEMENTS_RO (zif->rtadv.AdvPrefixList, node, rprefix))
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{
struct nd_opt_prefix_info *pinfo;
pinfo = (struct nd_opt_prefix_info *) (buf + len);
pinfo->nd_opt_pi_type = ND_OPT_PREFIX_INFORMATION;
pinfo->nd_opt_pi_len = 4;
pinfo->nd_opt_pi_prefix_len = rprefix->prefix.prefixlen;
pinfo->nd_opt_pi_flags_reserved = 0;
if (rprefix->AdvOnLinkFlag)
pinfo->nd_opt_pi_flags_reserved |= ND_OPT_PI_FLAG_ONLINK;
if (rprefix->AdvAutonomousFlag)
pinfo->nd_opt_pi_flags_reserved |= ND_OPT_PI_FLAG_AUTO;
if (rprefix->AdvRouterAddressFlag)
pinfo->nd_opt_pi_flags_reserved |= ND_OPT_PI_FLAG_RADDR;
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pinfo->nd_opt_pi_valid_time = htonl (rprefix->AdvValidLifetime);
pinfo->nd_opt_pi_preferred_time = htonl (rprefix->AdvPreferredLifetime);
pinfo->nd_opt_pi_reserved2 = 0;
IPV6_ADDR_COPY (&pinfo->nd_opt_pi_prefix, &rprefix->prefix.prefix);
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#ifdef DEBUG
{
u_char buf[INET6_ADDRSTRLEN];
zlog_debug ("DEBUG %s", inet_ntop (AF_INET6, &pinfo->nd_opt_pi_prefix,
buf, INET6_ADDRSTRLEN));
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}
#endif /* DEBUG */
len += sizeof (struct nd_opt_prefix_info);
}
/* Hardware address. */
if (ifp->hw_addr_len != 0)
{
buf[len++] = ND_OPT_SOURCE_LINKADDR;
/* Option length should be rounded up to next octet if
the link address does not end on an octet boundary. */
buf[len++] = (ifp->hw_addr_len + 9) >> 3;
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memcpy (buf + len, ifp->hw_addr, ifp->hw_addr_len);
len += ifp->hw_addr_len;
/* Pad option to end on an octet boundary. */
memset (buf + len, 0, -(ifp->hw_addr_len + 2) & 0x7);
len += -(ifp->hw_addr_len + 2) & 0x7;
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}
/* MTU */
if (zif->rtadv.AdvLinkMTU)
{
struct nd_opt_mtu * opt = (struct nd_opt_mtu *) (buf + len);
opt->nd_opt_mtu_type = ND_OPT_MTU;
opt->nd_opt_mtu_len = 1;
opt->nd_opt_mtu_reserved = 0;
opt->nd_opt_mtu_mtu = htonl (zif->rtadv.AdvLinkMTU);
len += sizeof (struct nd_opt_mtu);
}
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msg.msg_name = (void *) &addr;
msg.msg_namelen = sizeof (struct sockaddr_in6);
msg.msg_iov = &iov;
msg.msg_iovlen = 1;
msg.msg_control = (void *) adata;
msg.msg_controllen = CMSG_SPACE(sizeof(struct in6_pktinfo));
msg.msg_flags = 0;
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iov.iov_base = buf;
iov.iov_len = len;
cmsgptr = ZCMSG_FIRSTHDR(&msg);
cmsgptr->cmsg_len = CMSG_LEN(sizeof(struct in6_pktinfo));
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cmsgptr->cmsg_level = IPPROTO_IPV6;
cmsgptr->cmsg_type = IPV6_PKTINFO;
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pkt = (struct in6_pktinfo *) CMSG_DATA (cmsgptr);
memset (&pkt->ipi6_addr, 0, sizeof (struct in6_addr));
pkt->ipi6_ifindex = ifp->ifindex;
ret = sendmsg (sock, &msg, 0);
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if (ret < 0)
{
zlog_err ("%s(%u): Tx RA failed, socket %u error %d (%s)",
ifp->name, ifp->ifindex, sock, errno, safe_strerror(errno));
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}
else
zif->ra_sent++;
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}
static int
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rtadv_timer (struct thread *thread)
{
struct zebra_ns *zns = THREAD_ARG (thread);
vrf_iter_t iter;
struct listnode *node, *nnode;
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struct interface *ifp;
struct zebra_if *zif;
int period;
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zns->rtadv.ra_timer = NULL;
if (zns->rtadv.adv_msec_if_count == 0)
{
period = 1000; /* 1 s */
rtadv_event (zns, RTADV_TIMER, 1 /* 1 s */);
}
else
{
period = 10; /* 10 ms */
rtadv_event (zns, RTADV_TIMER_MSEC, 10 /* 10 ms */);
}
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for (iter = vrf_first (); iter != VRF_ITER_INVALID; iter = vrf_next (iter))
for (ALL_LIST_ELEMENTS (vrf_iter2iflist (iter), node, nnode, ifp))
{
if (if_is_loopback (ifp) ||
CHECK_FLAG(ifp->status, ZEBRA_INTERFACE_VRF_LOOPBACK) ||
! if_is_operative (ifp))
continue;
zif = ifp->info;
if (zif->rtadv.AdvSendAdvertisements)
{
if (zif->rtadv.inFastRexmit)
{
/* We assume we fast rexmit every sec so no additional vars */
if (--zif->rtadv.NumFastReXmitsRemain <= 0)
zif->rtadv.inFastRexmit = 0;
if (IS_ZEBRA_DEBUG_SEND)
zlog_debug("Fast RA Rexmit on interface %s", ifp->name);
rtadv_send_packet (zns->rtadv.sock, ifp);
}
else
{
zif->rtadv.AdvIntervalTimer -= period;
if (zif->rtadv.AdvIntervalTimer <= 0)
{
/* FIXME: using MaxRtrAdvInterval each time isn't what section
6.2.4 of RFC4861 tells to do. */
zif->rtadv.AdvIntervalTimer = zif->rtadv.MaxRtrAdvInterval;
rtadv_send_packet (zns->rtadv.sock, ifp);
}
}
}
}
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return 0;
}
static void
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rtadv_process_solicit (struct interface *ifp)
{
struct zebra_vrf *zvrf = vrf_info_lookup (ifp->vrf_id);
struct zebra_ns *zns = zvrf->zns;
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assert (zns);
rtadv_send_packet (zns->rtadv.sock, ifp);
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}
static void
rtadv_process_advert (u_char *msg, unsigned int len, struct interface *ifp,
struct sockaddr_in6 *addr)
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{
struct nd_router_advert *radvert;
char addr_str[INET6_ADDRSTRLEN];
struct zebra_if *zif;
struct prefix p;
zif = ifp->info;
inet_ntop (AF_INET6, &addr->sin6_addr, addr_str, INET6_ADDRSTRLEN);
if (len < sizeof(struct nd_router_advert)) {
zlog_warn("%s(%u): Rx RA with invalid length %d from %s",
ifp->name, ifp->ifindex, len, addr_str);
return;
}
if (!IN6_IS_ADDR_LINKLOCAL(&addr->sin6_addr)) {
zlog_warn("%s(%u): Rx RA with non-linklocal source address from %s",
ifp->name, ifp->ifindex, addr_str);
return;
}
radvert = (struct nd_router_advert *) msg;
if ((radvert->nd_ra_curhoplimit && zif->rtadv.AdvCurHopLimit) &&
(radvert->nd_ra_curhoplimit != zif->rtadv.AdvCurHopLimit))
{
zlog_warn("%s(%u): Rx RA - our AdvCurHopLimit doesn't agree with %s",
ifp->name, ifp->ifindex, addr_str);
}
if ((radvert->nd_ra_flags_reserved & ND_RA_FLAG_MANAGED) &&
!zif->rtadv.AdvManagedFlag)
{
zlog_warn("%s(%u): Rx RA - our AdvManagedFlag doesn't agree with %s",
ifp->name, ifp->ifindex, addr_str);
}
if ((radvert->nd_ra_flags_reserved & ND_RA_FLAG_OTHER) &&
!zif->rtadv.AdvOtherConfigFlag)
{
zlog_warn("%s(%u): Rx RA - our AdvOtherConfigFlag doesn't agree with %s",
ifp->name, ifp->ifindex, addr_str);
}
if ((radvert->nd_ra_reachable && zif->rtadv.AdvReachableTime) &&
(ntohl(radvert->nd_ra_reachable) != zif->rtadv.AdvReachableTime))
{
zlog_warn("%s(%u): Rx RA - our AdvReachableTime doesn't agree with %s",
ifp->name, ifp->ifindex, addr_str);
}
if ((radvert->nd_ra_retransmit && zif->rtadv.AdvRetransTimer) &&
(ntohl(radvert->nd_ra_retransmit) != (unsigned int)zif->rtadv.AdvRetransTimer))
{
zlog_warn("%s(%u): Rx RA - our AdvRetransTimer doesn't agree with %s",
ifp->name, ifp->ifindex, addr_str);
}
/* Create entry for neighbor if not known. */
p.family = AF_INET6;
IPV6_ADDR_COPY (&p.u.prefix, &addr->sin6_addr);
p.prefixlen = IPV6_MAX_PREFIXLEN;
if (!nbr_connected_check(ifp, &p))
nbr_connected_add_ipv6 (ifp, &addr->sin6_addr);
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}
static void
rtadv_process_packet (u_char *buf, unsigned int len, ifindex_t ifindex, int hoplimit,
struct sockaddr_in6 *from, struct zebra_ns *zns)
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{
struct icmp6_hdr *icmph;
struct interface *ifp;
struct zebra_if *zif;
char addr_str[INET6_ADDRSTRLEN];
inet_ntop (AF_INET6, &from->sin6_addr, addr_str, INET6_ADDRSTRLEN);
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/* Interface search. */
ifp = if_lookup_by_index_per_ns (zns, ifindex);
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if (ifp == NULL)
{
zlog_warn ("RA/RS received on unknown IF %u from %s",
ifindex, addr_str);
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return;
}
if (IS_ZEBRA_DEBUG_PACKET)
zlog_debug ("%s(%u): Rx RA/RS len %d from %s",
ifp->name, ifp->ifindex, len, addr_str);
if (if_is_loopback (ifp) ||
CHECK_FLAG(ifp->status, ZEBRA_INTERFACE_VRF_LOOPBACK))
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return;
/* Check interface configuration. */
zif = ifp->info;
if (! zif->rtadv.AdvSendAdvertisements)
return;
/* ICMP message length check. */
if (len < sizeof (struct icmp6_hdr))
{
zlog_warn ("%s(%u): Rx RA with Invalid ICMPV6 packet length %d",
ifp->name, ifp->ifindex, len);
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return;
}
icmph = (struct icmp6_hdr *) buf;
/* ICMP message type check. */
if (icmph->icmp6_type != ND_ROUTER_SOLICIT &&
icmph->icmp6_type != ND_ROUTER_ADVERT)
{
zlog_warn ("%s(%u): Rx RA - Unwanted ICMPV6 message type %d",
ifp->name, ifp->ifindex, icmph->icmp6_type);
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return;
}
/* Hoplimit check. */
if (hoplimit >= 0 && hoplimit != 255)
{
zlog_warn ("%s(%u): Rx RA - Invalid hoplimit %d",
ifp->name, ifp->ifindex, hoplimit);
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return;
}
/* Check ICMP message type. */
if (icmph->icmp6_type == ND_ROUTER_SOLICIT)
rtadv_process_solicit (ifp);
else if (icmph->icmp6_type == ND_ROUTER_ADVERT)
rtadv_process_advert (buf, len, ifp, from);
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return;
}
static int
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rtadv_read (struct thread *thread)
{
int sock;
int len;
u_char buf[RTADV_MSG_SIZE];
struct sockaddr_in6 from;
ifindex_t ifindex = 0;
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int hoplimit = -1;
struct zebra_ns *zns = THREAD_ARG (thread);
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sock = THREAD_FD (thread);
zns->rtadv.ra_read = NULL;
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/* Register myself. */
rtadv_event (zns, RTADV_READ, sock);
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len = rtadv_recv_packet (zns, sock, buf, sizeof (buf), &from, &ifindex, &hoplimit);
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if (len < 0)
{
zlog_warn ("RA/RS recv failed, socket %u error %s",
sock, safe_strerror (errno));
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return len;
}
rtadv_process_packet (buf, (unsigned)len, ifindex, hoplimit, &from, zns);
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return 0;
}
static int
rtadv_make_socket (void)
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{
int sock;
int ret = 0;
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struct icmp6_filter filter;
if ( zserv_privs.change (ZPRIVS_RAISE) )
zlog_err ("rtadv_make_socket: could not raise privs, %s",
safe_strerror (errno) );
sock = socket (AF_INET6, SOCK_RAW, IPPROTO_ICMPV6);
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if ( zserv_privs.change (ZPRIVS_LOWER) )
zlog_err ("rtadv_make_socket: could not lower privs, %s",
safe_strerror (errno) );
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if (sock < 0)
{
close (sock);
return -1;
}
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ret = setsockopt_ipv6_pktinfo (sock, 1);
if (ret < 0)
{
close (sock);
return ret;
}
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ret = setsockopt_ipv6_multicast_loop (sock, 0);
if (ret < 0)
{
close (sock);
return ret;
}
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ret = setsockopt_ipv6_unicast_hops (sock, 255);
if (ret < 0)
{
close (sock);
return ret;
}
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ret = setsockopt_ipv6_multicast_hops (sock, 255);
if (ret < 0)
{
close (sock);
return ret;
}
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ret = setsockopt_ipv6_hoplimit (sock, 1);
if (ret < 0)
{
close (sock);
return ret;
}
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ICMP6_FILTER_SETBLOCKALL(&filter);
ICMP6_FILTER_SETPASS (ND_ROUTER_SOLICIT, &filter);
ICMP6_FILTER_SETPASS (ND_ROUTER_ADVERT, &filter);
ret = setsockopt (sock, IPPROTO_ICMPV6, ICMP6_FILTER, &filter,
sizeof (struct icmp6_filter));
if (ret < 0)
{
zlog_info ("ICMP6_FILTER set fail: %s", safe_strerror (errno));
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return ret;
}
return sock;
}
static struct rtadv_prefix *
rtadv_prefix_new (void)
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{
return XCALLOC (MTYPE_RTADV_PREFIX, sizeof (struct rtadv_prefix));
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}
static void
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rtadv_prefix_free (struct rtadv_prefix *rtadv_prefix)
{
XFREE (MTYPE_RTADV_PREFIX, rtadv_prefix);
}
static struct rtadv_prefix *
rtadv_prefix_lookup (struct list *rplist, struct prefix_ipv6 *p)
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{
struct listnode *node;
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struct rtadv_prefix *rprefix;
for (ALL_LIST_ELEMENTS_RO (rplist, node, rprefix))
if (prefix_same ((struct prefix *) &rprefix->prefix, (struct prefix *) p))
return rprefix;
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return NULL;
}
static struct rtadv_prefix *
rtadv_prefix_get (struct list *rplist, struct prefix_ipv6 *p)
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{
struct rtadv_prefix *rprefix;
rprefix = rtadv_prefix_lookup (rplist, p);
if (rprefix)
return rprefix;
rprefix = rtadv_prefix_new ();
memcpy (&rprefix->prefix, p, sizeof (struct prefix_ipv6));
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listnode_add (rplist, rprefix);
return rprefix;
}
static void
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rtadv_prefix_set (struct zebra_if *zif, struct rtadv_prefix *rp)
{
struct rtadv_prefix *rprefix;
rprefix = rtadv_prefix_get (zif->rtadv.AdvPrefixList, &rp->prefix);
/* Set parameters. */
rprefix->AdvValidLifetime = rp->AdvValidLifetime;
rprefix->AdvPreferredLifetime = rp->AdvPreferredLifetime;
rprefix->AdvOnLinkFlag = rp->AdvOnLinkFlag;
rprefix->AdvAutonomousFlag = rp->AdvAutonomousFlag;
rprefix->AdvRouterAddressFlag = rp->AdvRouterAddressFlag;
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}
static int
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rtadv_prefix_reset (struct zebra_if *zif, struct rtadv_prefix *rp)
{
struct rtadv_prefix *rprefix;
rprefix = rtadv_prefix_lookup (zif->rtadv.AdvPrefixList, &rp->prefix);
if (rprefix != NULL)
{
listnode_delete (zif->rtadv.AdvPrefixList, (void *) rprefix);
rtadv_prefix_free (rprefix);
return 1;
}
else
return 0;
}
static void
ipv6_nd_suppress_ra_set (struct interface *ifp, ipv6_nd_suppress_ra_status status)
{
struct zebra_if *zif;
struct zebra_vrf *zvrf;
struct zebra_ns *zns;
zif = ifp->info;
zvrf = vrf_info_lookup (ifp->vrf_id);
zns = zvrf->zns;
if (status == RA_SUPPRESS)
{
/* RA is currently enabled */
if (zif->rtadv.AdvSendAdvertisements)
{
zif->rtadv.AdvSendAdvertisements = 0;
zif->rtadv.AdvIntervalTimer = 0;
zns->rtadv.adv_if_count--;
if_leave_all_router (zns->rtadv.sock, ifp);
if (zns->rtadv.adv_if_count == 0)
rtadv_event (zns, RTADV_STOP, 0);
}
}
else
{
if (! zif->rtadv.AdvSendAdvertisements)
{
zif->rtadv.AdvSendAdvertisements = 1;
zif->rtadv.AdvIntervalTimer = 0;
zns->rtadv.adv_if_count++;
if (zif->rtadv.MaxRtrAdvInterval >= 1000)
{
/* Enable Fast RA only when RA interval is in secs */
zif->rtadv.inFastRexmit = 1;
zif->rtadv.NumFastReXmitsRemain = RTADV_NUM_FAST_REXMITS;
}
if_join_all_router (zns->rtadv.sock, ifp);
if (zns->rtadv.adv_if_count == 1)
rtadv_event (zns, RTADV_START, zns->rtadv.sock);
}
}
}
/*
* Handle client (BGP) message to enable or disable IPv6 RA on an interface.
* Note that while the client could request RA on an interface on which the
* operator has not enabled RA, RA won't be disabled upon client request
* if the operator has explicitly enabled RA. The enable request can also
* specify a RA interval (in seconds).
*/
void
zebra_interface_radv_set (struct zserv *client, int sock, u_short length,
struct zebra_vrf *zvrf, int enable)
{
struct stream *s;
unsigned int ifindex;
struct interface *ifp;
struct zebra_if *zif;
int ra_interval;
s = client->ibuf;
/* Get interface index and RA interval. */
ifindex = stream_getl (s);
ra_interval = stream_getl (s);
if (IS_ZEBRA_DEBUG_EVENT)
zlog_debug("%u: IF %u RA %s from client %s, interval %ds",
zvrf->vrf_id, ifindex, enable ? "enable" : "disable",
zebra_route_string(client->proto), ra_interval);
/* Locate interface and check VRF match. */
ifp = if_lookup_by_index_per_ns (zebra_ns_lookup (NS_DEFAULT), ifindex);
if (!ifp)
{
zlog_warn("%u: IF %u RA %s client %s - interface unknown",
zvrf->vrf_id, ifindex, enable ? "enable" : "disable",
zebra_route_string(client->proto));
return;
}
if (ifp->vrf_id != zvrf->vrf_id)
{
zlog_warn("%u: IF %u RA %s client %s - VRF mismatch, IF VRF %u",
zvrf->vrf_id, ifindex, enable ? "enable" : "disable",
zebra_route_string(client->proto), ifp->vrf_id);
return;
}
zif = ifp->info;
if (enable)
{
ipv6_nd_suppress_ra_set (ifp, RA_ENABLE);
if (ra_interval &&
(ra_interval * 1000) < zif->rtadv.MaxRtrAdvInterval)
zif->rtadv.MaxRtrAdvInterval = ra_interval * 1000;
}
else
{
if (!zif->rtadv.configured)
{
zif->rtadv.MaxRtrAdvInterval = RTADV_MAX_RTR_ADV_INTERVAL;
ipv6_nd_suppress_ra_set (ifp, RA_SUPPRESS);
}
}
}
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DEFUN (ipv6_nd_suppress_ra,
ipv6_nd_suppress_ra_cmd,
"ipv6 nd suppress-ra",
"Interface IPv6 config commands\n"
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"Neighbor discovery\n"
"Suppress Router Advertisement\n")
{
struct interface *ifp;
struct zebra_if *zif;
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ifp = vty->index;
if (if_is_loopback (ifp) ||
CHECK_FLAG(ifp->status, ZEBRA_INTERFACE_VRF_LOOPBACK))
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{
vty_out (vty, "Cannot configure IPv6 Router Advertisements on this interface%s", VTY_NEWLINE);
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return CMD_WARNING;
}
ipv6_nd_suppress_ra_set (ifp, RA_SUPPRESS);
zif = ifp->info;
zif->rtadv.configured = 0;
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return CMD_SUCCESS;
}
DEFUN (no_ipv6_nd_suppress_ra,
no_ipv6_nd_suppress_ra_cmd,
"no ipv6 nd suppress-ra",
NO_STR
"Interface IPv6 config commands\n"
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"Neighbor discovery\n"
"Suppress Router Advertisement\n")
{
struct interface *ifp;
struct zebra_if *zif;
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ifp = vty->index;
if (if_is_loopback (ifp) ||
CHECK_FLAG(ifp->status, ZEBRA_INTERFACE_VRF_LOOPBACK))
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{
vty_out (vty, "Cannot configure IPv6 Router Advertisements on this interface%s", VTY_NEWLINE);
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return CMD_WARNING;
}
ipv6_nd_suppress_ra_set (ifp, RA_ENABLE);
zif = ifp->info;
zif->rtadv.configured = 1;
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return CMD_SUCCESS;
}
DEFUN (ipv6_nd_ra_interval_msec,
ipv6_nd_ra_interval_msec_cmd,
"ipv6 nd ra-interval msec <70-1800000>",
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Router Advertisement interval\n"
"Router Advertisement interval in milliseconds\n")
{
unsigned interval;
struct interface *ifp = (struct interface *) vty->index;
struct zebra_if *zif = ifp->info;
struct zebra_vrf *zvrf = vrf_info_lookup (ifp->vrf_id);
struct zebra_ns *zns;
zns = zvrf->zns;
VTY_GET_INTEGER_RANGE ("router advertisement interval", interval, argv[4]->arg, 70, 1800000);
if ((zif->rtadv.AdvDefaultLifetime != -1 && interval > (unsigned)zif->rtadv.AdvDefaultLifetime * 1000))
{
vty_out (vty, "This ra-interval would conflict with configured ra-lifetime!%s", VTY_NEWLINE);
return CMD_WARNING;
}
if (zif->rtadv.MaxRtrAdvInterval % 1000)
zns->rtadv.adv_msec_if_count--;
if (interval % 1000)
zns->rtadv.adv_msec_if_count++;
zif->rtadv.MaxRtrAdvInterval = interval;
zif->rtadv.MinRtrAdvInterval = 0.33 * interval;
zif->rtadv.AdvIntervalTimer = 0;
return CMD_SUCCESS;
}
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DEFUN (ipv6_nd_ra_interval,
ipv6_nd_ra_interval_cmd,
"ipv6 nd ra-interval <1-1800>",
"Interface IPv6 config commands\n"
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"Neighbor discovery\n"
"Router Advertisement interval\n"
"Router Advertisement interval in seconds\n")
{
unsigned interval;
struct interface *ifp = (struct interface *) vty->index;
struct zebra_if *zif = ifp->info;
struct zebra_vrf *zvrf = vrf_info_lookup (ifp->vrf_id);
struct zebra_ns *zns;
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zns = zvrf->zns;
VTY_GET_INTEGER_RANGE ("router advertisement interval", interval, argv[3]->arg, 1, 1800);
if ((zif->rtadv.AdvDefaultLifetime != -1 && interval > (unsigned)zif->rtadv.AdvDefaultLifetime))
{
vty_out (vty, "This ra-interval would conflict with configured ra-lifetime!%s", VTY_NEWLINE);
return CMD_WARNING;
}
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if (zif->rtadv.MaxRtrAdvInterval % 1000)
zns->rtadv.adv_msec_if_count--;
/* convert to milliseconds */
interval = interval * 1000;
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zif->rtadv.MaxRtrAdvInterval = interval;
zif->rtadv.MinRtrAdvInterval = 0.33 * interval;
zif->rtadv.AdvIntervalTimer = 0;
return CMD_SUCCESS;
}
/*
* CHECK ME - The following ALIASes need to be implemented in this DEFUN
* "no ipv6 nd ra-interval <1-1800>",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Router Advertisement interval\n"
*
* "no ipv6 nd ra-interval msec <1-1800000>",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Router Advertisement interval\n"
* "Router Advertisement interval in milliseconds\n"
*
*/
2002-12-13 21:15:29 +01:00
DEFUN (no_ipv6_nd_ra_interval,
no_ipv6_nd_ra_interval_cmd,
"no ipv6 nd ra-interval",
NO_STR
"Interface IPv6 config commands\n"
2002-12-13 21:15:29 +01:00
"Neighbor discovery\n"
"Router Advertisement interval\n")
{
struct interface *ifp;
struct zebra_if *zif;
struct zebra_vrf *zvrf;
struct zebra_ns *zns;
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ifp = (struct interface *) vty->index;
zif = ifp->info;
zvrf = vrf_info_lookup (ifp->vrf_id);
zns = zvrf->zns;
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if (zif->rtadv.MaxRtrAdvInterval % 1000)
zns->rtadv.adv_msec_if_count--;
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zif->rtadv.MaxRtrAdvInterval = RTADV_MAX_RTR_ADV_INTERVAL;
zif->rtadv.MinRtrAdvInterval = RTADV_MIN_RTR_ADV_INTERVAL;
zif->rtadv.AdvIntervalTimer = zif->rtadv.MaxRtrAdvInterval;
return CMD_SUCCESS;
}
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DEFUN (ipv6_nd_ra_lifetime,
ipv6_nd_ra_lifetime_cmd,
"ipv6 nd ra-lifetime <0-9000>",
"Interface IPv6 config commands\n"
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"Neighbor discovery\n"
"Router lifetime\n"
"Router lifetime in seconds (0 stands for a non-default gw)\n")
2002-12-13 21:15:29 +01:00
{
int lifetime;
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
VTY_GET_INTEGER_RANGE ("router lifetime", lifetime, argv[3]->arg, 0, 9000);
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/* The value to be placed in the Router Lifetime field
* of Router Advertisements sent from the interface,
* in seconds. MUST be either zero or between
* MaxRtrAdvInterval and 9000 seconds. -- RFC4861, 6.2.1 */
if ((lifetime != 0 && lifetime * 1000 < zif->rtadv.MaxRtrAdvInterval))
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{
vty_out (vty, "This ra-lifetime would conflict with configured ra-interval%s", VTY_NEWLINE);
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return CMD_WARNING;
}
zif->rtadv.AdvDefaultLifetime = lifetime;
return CMD_SUCCESS;
}
/*
* CHECK ME - The following ALIASes need to be implemented in this DEFUN
* "no ipv6 nd ra-lifetime <0-9000>",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Router lifetime\n"
* "Router lifetime in seconds (0 stands for a non-default gw)\n"
*
*/
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DEFUN (no_ipv6_nd_ra_lifetime,
no_ipv6_nd_ra_lifetime_cmd,
"no ipv6 nd ra-lifetime",
NO_STR
"Interface IPv6 config commands\n"
2002-12-13 21:15:29 +01:00
"Neighbor discovery\n"
"Router lifetime\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.AdvDefaultLifetime = -1;
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return CMD_SUCCESS;
}
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DEFUN (ipv6_nd_reachable_time,
ipv6_nd_reachable_time_cmd,
"ipv6 nd reachable-time <1-3600000>",
"Interface IPv6 config commands\n"
2002-12-13 21:15:29 +01:00
"Neighbor discovery\n"
"Reachable time\n"
"Reachable time in milliseconds\n")
{
struct interface *ifp = (struct interface *) vty->index;
struct zebra_if *zif = ifp->info;
VTY_GET_INTEGER_RANGE ("reachable time", zif->rtadv.AdvReachableTime, argv[3]->arg, 1, RTADV_MAX_REACHABLE_TIME);
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return CMD_SUCCESS;
}
/*
* CHECK ME - The following ALIASes need to be implemented in this DEFUN
* "no ipv6 nd reachable-time <1-3600000>",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Reachable time\n"
* "Reachable time in milliseconds\n"
*
*/
2002-12-13 21:15:29 +01:00
DEFUN (no_ipv6_nd_reachable_time,
no_ipv6_nd_reachable_time_cmd,
"no ipv6 nd reachable-time",
NO_STR
"Interface IPv6 config commands\n"
2002-12-13 21:15:29 +01:00
"Neighbor discovery\n"
"Reachable time\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.AdvReachableTime = 0;
return CMD_SUCCESS;
}
DEFUN (ipv6_nd_homeagent_preference,
ipv6_nd_homeagent_preference_cmd,
"ipv6 nd home-agent-preference <0-65535>",
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Home Agent preference\n"
"preference value (default is 0, least preferred)\n")
{
struct interface *ifp = (struct interface *) vty->index;
struct zebra_if *zif = ifp->info;
VTY_GET_INTEGER_RANGE ("home agent preference", zif->rtadv.HomeAgentPreference, argv[3]->arg, 0, 65535);
return CMD_SUCCESS;
}
/*
* CHECK ME - The following ALIASes need to be implemented in this DEFUN
* "no ipv6 nd home-agent-preference <0-65535>",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Home Agent preference\n"
* "preference value (default is 0, least preferred)\n"
*
*/
DEFUN (no_ipv6_nd_homeagent_preference,
no_ipv6_nd_homeagent_preference_cmd,
"no ipv6 nd home-agent-preference",
NO_STR
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Home Agent preference\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.HomeAgentPreference = 0;
return CMD_SUCCESS;
}
DEFUN (ipv6_nd_homeagent_lifetime,
ipv6_nd_homeagent_lifetime_cmd,
"ipv6 nd home-agent-lifetime <0-65520>",
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Home Agent lifetime\n"
"Home Agent lifetime in seconds (0 to track ra-lifetime)\n")
{
struct interface *ifp = (struct interface *) vty->index;
struct zebra_if *zif = ifp->info;
VTY_GET_INTEGER_RANGE ("home agent lifetime", zif->rtadv.HomeAgentLifetime, argv[3]->arg, 0, RTADV_MAX_HALIFETIME);
return CMD_SUCCESS;
}
/*
* CHECK ME - The following ALIASes need to be implemented in this DEFUN
* "no ipv6 nd home-agent-lifetime <0-65520>",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Home Agent lifetime\n"
* "Home Agent lifetime in seconds (0 to track ra-lifetime)\n"
*
*/
DEFUN (no_ipv6_nd_homeagent_lifetime,
no_ipv6_nd_homeagent_lifetime_cmd,
"no ipv6 nd home-agent-lifetime",
NO_STR
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Home Agent lifetime\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.HomeAgentLifetime = -1;
return CMD_SUCCESS;
}
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DEFUN (ipv6_nd_managed_config_flag,
ipv6_nd_managed_config_flag_cmd,
"ipv6 nd managed-config-flag",
"Interface IPv6 config commands\n"
2002-12-13 21:15:29 +01:00
"Neighbor discovery\n"
"Managed address configuration flag\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.AdvManagedFlag = 1;
return CMD_SUCCESS;
}
DEFUN (no_ipv6_nd_managed_config_flag,
no_ipv6_nd_managed_config_flag_cmd,
"no ipv6 nd managed-config-flag",
NO_STR
"Interface IPv6 config commands\n"
2002-12-13 21:15:29 +01:00
"Neighbor discovery\n"
"Managed address configuration flag\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.AdvManagedFlag = 0;
return CMD_SUCCESS;
}
DEFUN (ipv6_nd_homeagent_config_flag,
ipv6_nd_homeagent_config_flag_cmd,
"ipv6 nd home-agent-config-flag",
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Home Agent configuration flag\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.AdvHomeAgentFlag = 1;
return CMD_SUCCESS;
}
DEFUN (no_ipv6_nd_homeagent_config_flag,
no_ipv6_nd_homeagent_config_flag_cmd,
"no ipv6 nd home-agent-config-flag",
NO_STR
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Home Agent configuration flag\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.AdvHomeAgentFlag = 0;
return CMD_SUCCESS;
}
DEFUN (ipv6_nd_adv_interval_config_option,
ipv6_nd_adv_interval_config_option_cmd,
"ipv6 nd adv-interval-option",
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Advertisement Interval Option\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.AdvIntervalOption = 1;
return CMD_SUCCESS;
}
DEFUN (no_ipv6_nd_adv_interval_config_option,
no_ipv6_nd_adv_interval_config_option_cmd,
"no ipv6 nd adv-interval-option",
NO_STR
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Advertisement Interval Option\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.AdvIntervalOption = 0;
return CMD_SUCCESS;
}
2002-12-13 21:15:29 +01:00
DEFUN (ipv6_nd_other_config_flag,
ipv6_nd_other_config_flag_cmd,
"ipv6 nd other-config-flag",
"Interface IPv6 config commands\n"
2002-12-13 21:15:29 +01:00
"Neighbor discovery\n"
"Other statefull configuration flag\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.AdvOtherConfigFlag = 1;
return CMD_SUCCESS;
}
DEFUN (no_ipv6_nd_other_config_flag,
no_ipv6_nd_other_config_flag_cmd,
"no ipv6 nd other-config-flag",
NO_STR
"Interface IPv6 config commands\n"
2002-12-13 21:15:29 +01:00
"Neighbor discovery\n"
"Other statefull configuration flag\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.AdvOtherConfigFlag = 0;
return CMD_SUCCESS;
}
/*
* CHECK ME - The following ALIASes need to be implemented in this DEFUN
* "ipv6 nd prefix X:X::X:X/M (no-autoconfig|)",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Do not use prefix for autoconfiguration\n"
*
* "ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) "
* "(<0-4294967295>|infinite)",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
*
* "ipv6 nd prefix X:X::X:X/M (off-link|) (no-autoconfig|)",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Do not use prefix for onlink determination\n"
* "Do not use prefix for autoconfiguration\n"
*
* "ipv6 nd prefix X:X::X:X/M (router-address|)",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Set Router Address flag\n"
*
* "ipv6 nd prefix X:X::X:X/M (no-autoconfig|) (off-link|)",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Do not use prefix for autoconfiguration\n"
* "Do not use prefix for onlink determination\n"
*
* "ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) "
* "(<0-4294967295>|infinite) (router-address|)",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
* "Set Router Address flag\n"
*
* "ipv6 nd prefix X:X::X:X/M",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
*
* "ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) "
* "(<0-4294967295>|infinite) (off-link|) (no-autoconfig|)",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
* "Do not use prefix for onlink determination\n"
* "Do not use prefix for autoconfiguration\n"
*
* "ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) "
* "(<0-4294967295>|infinite) (no-autoconfig|) (off-link|)",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
* "Do not use prefix for autoconfiguration\n"
* "Do not use prefix for onlink determination\n"
*
* "ipv6 nd prefix X:X::X:X/M (off-link|)",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Do not use prefix for onlink determination\n"
*
* "ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) "
* "(<0-4294967295>|infinite) (no-autoconfig|)",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
* "Do not use prefix for autoconfiguration"
*
* "ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) "
* "(<0-4294967295>|infinite) (off-link|)",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
* "Do not use prefix for onlink determination\n"
*
* "ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) "
* "(<0-4294967295>|infinite) (no-autoconfig|) (off-link|) (router-address|)",
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
* "Do not use prefix for autoconfiguration\n"
* "Do not use prefix for onlink determination\n"
* "Set Router Address flag\n"
*
*/
DEFUN (ipv6_nd_prefix,
ipv6_nd_prefix_cmd,
"ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) (<0-4294967295>|infinite) (off-link|) (no-autoconfig|) (router-address|)",
"Interface IPv6 config commands\n"
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"Neighbor discovery\n"
"Prefix information\n"
"IPv6 prefix\n"
"Valid lifetime in seconds\n"
"Infinite valid lifetime\n"
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"Preferred lifetime in seconds\n"
"Infinite preferred lifetime\n"
"Do not use prefix for onlink determination\n"
"Do not use prefix for autoconfiguration\n"
"Set Router Address flag\n")
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{
int i;
int ret;
int cursor = 1;
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struct interface *ifp;
struct zebra_if *zebra_if;
struct rtadv_prefix rp;
ifp = (struct interface *) vty->index;
zebra_if = ifp->info;
ret = str2prefix_ipv6 (argv[3]->arg, &rp.prefix);
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if (!ret)
{
vty_out (vty, "Malformed IPv6 prefix%s", VTY_NEWLINE);
return CMD_WARNING;
}
apply_mask_ipv6 (&rp.prefix); /* RFC4861 4.6.2 */
rp.AdvOnLinkFlag = 1;
rp.AdvAutonomousFlag = 1;
rp.AdvRouterAddressFlag = 0;
rp.AdvValidLifetime = RTADV_VALID_LIFETIME;
rp.AdvPreferredLifetime = RTADV_PREFERRED_LIFETIME;
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if (argc > 1)
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{
if ((isdigit((unsigned char)argv[4]->arg[0]))
|| strncmp (argv[4]->arg, "i", 1) == 0)
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{
if ( strncmp (argv[4]->arg, "i", 1) == 0)
rp.AdvValidLifetime = UINT32_MAX;
else
rp.AdvValidLifetime = (u_int32_t) strtoll (argv[4]->arg,
(char **)NULL, 10);
if ( strncmp (argv[5]->arg, "i", 1) == 0)
rp.AdvPreferredLifetime = UINT32_MAX;
else
rp.AdvPreferredLifetime = (u_int32_t) strtoll (argv[5]->arg,
(char **)NULL, 10);
if (rp.AdvPreferredLifetime > rp.AdvValidLifetime)
{
vty_out (vty, "Invalid preferred lifetime%s", VTY_NEWLINE);
return CMD_WARNING;
}
cursor = cursor + 2;
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}
if (argc > cursor)
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{
for (i = cursor; i < argc; i++)
{
if (strncmp (argv[i], "of", 2) == 0)
rp.AdvOnLinkFlag = 0;
if (strncmp (argv[i], "no", 2) == 0)
rp.AdvAutonomousFlag = 0;
if (strncmp (argv[i], "ro", 2) == 0)
rp.AdvRouterAddressFlag = 1;
}
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}
}
rtadv_prefix_set (zebra_if, &rp);
return CMD_SUCCESS;
}
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/*
* CHECK ME - The following ALIASes need to be implemented in this DEFUN
* "no ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) (<0-4294967295>|infinite) (no-autoconfig|) (off-link|)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
* "Do not use prefix for autoconfiguration\n"
* "Do not use prefix for onlink determination\n"
*
* "no ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) (<0-4294967295>|infinite) (no-autoconfig|)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
* "Do not use prefix for autoconfiguration"
*
* "no ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) (<0-4294967295>|infinite) (off-link|) (no-autoconfig|) (router-address|)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
* "Do not use prefix for onlink determination\n"
* "Do not use prefix for autoconfiguration\n"
* "Set Router Address flag\n"
*
* "no ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) (<0-4294967295>|infinite) (off-link|)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
* "Do not use prefix for onlink determination\n"
*
* "no ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) (<0-4294967295>|infinite) (no-autoconfig|) (off-link|) (router-address|)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
* "Do not use prefix for autoconfiguration\n"
* "Do not use prefix for onlink determination\n"
* "Set Router Address flag\n"
*
* "no ipv6 nd prefix X:X::X:X/M (router-address|)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Set Router Address flag\n"
*
* "no ipv6 nd prefix X:X::X:X/M (off-link|)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Do not use prefix for onlink determination\n"
*
* "no ipv6 nd prefix X:X::X:X/M (no-autoconfig|)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Do not use prefix for autoconfiguration\n"
*
* "no ipv6 nd prefix X:X::X:X/M (no-autoconfig|) (off-link|)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Do not use prefix for autoconfiguration\n"
* "Do not use prefix for onlink determination\n"
*
* "no ipv6 nd prefix X:X::X:X/M (off-link|) (no-autoconfig|)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Do not use prefix for onlink determination\n"
* "Do not use prefix for autoconfiguration\n"
*
* "no ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) (<0-4294967295>|infinite) (router-address|)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
* "Set Router Address flag\n"
*
* "no ipv6 nd prefix X:X::X:X/M (<0-4294967295>|infinite) (<0-4294967295>|infinite)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Prefix information\n"
* "IPv6 prefix\n"
* "Valid lifetime in seconds\n"
* "Infinite valid lifetime\n"
* "Preferred lifetime in seconds\n"
* "Infinite preferred lifetime\n"
*
*/
DEFUN (no_ipv6_nd_prefix,
no_ipv6_nd_prefix_cmd,
"no ipv6 nd prefix IPV6PREFIX",
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NO_STR
"Interface IPv6 config commands\n"
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"Neighbor discovery\n"
"Prefix information\n"
"IPv6 prefix\n")
{
int ret;
struct interface *ifp;
struct zebra_if *zebra_if;
struct rtadv_prefix rp;
ifp = (struct interface *) vty->index;
zebra_if = ifp->info;
ret = str2prefix_ipv6 (argv[0], &rp.prefix);
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if (!ret)
{
vty_out (vty, "Malformed IPv6 prefix%s", VTY_NEWLINE);
return CMD_WARNING;
}
apply_mask_ipv6 (&rp.prefix); /* RFC4861 4.6.2 */
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ret = rtadv_prefix_reset (zebra_if, &rp);
if (!ret)
{
vty_out (vty, "Non-exist IPv6 prefix%s", VTY_NEWLINE);
return CMD_WARNING;
}
return CMD_SUCCESS;
}
DEFUN (ipv6_nd_router_preference,
ipv6_nd_router_preference_cmd,
"ipv6 nd router-preference (high|medium|low)",
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Default router preference\n"
"High default router preference\n"
"Low default router preference\n"
"Medium default router preference (default)\n")
{
struct interface *ifp;
struct zebra_if *zif;
int i = 0;
ifp = (struct interface *) vty->index;
zif = ifp->info;
while (0 != rtadv_pref_strs[i])
{
if (strncmp (argv[3]->arg, rtadv_pref_strs[i], 1) == 0)
{
zif->rtadv.DefaultPreference = i;
return CMD_SUCCESS;
}
i++;
}
return CMD_ERR_NO_MATCH;
}
/*
* CHECK ME - The following ALIASes need to be implemented in this DEFUN
* "no ipv6 nd router-preference (high|medium|low)",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Default router preference\n"
* "High default router preference\n"
* "Low default router preference\n"
* "Medium default router preference (default)\n"
*
*/
DEFUN (no_ipv6_nd_router_preference,
no_ipv6_nd_router_preference_cmd,
"no ipv6 nd router-preference",
NO_STR
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Default router preference\n")
{
struct interface *ifp;
struct zebra_if *zif;
ifp = (struct interface *) vty->index;
zif = ifp->info;
zif->rtadv.DefaultPreference = RTADV_PREF_MEDIUM; /* Default per RFC4191. */
return CMD_SUCCESS;
}
DEFUN (ipv6_nd_mtu,
ipv6_nd_mtu_cmd,
"ipv6 nd mtu <1-65535>",
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Advertised MTU\n"
"MTU in bytes\n")
{
struct interface *ifp = (struct interface *) vty->index;
struct zebra_if *zif = ifp->info;
VTY_GET_INTEGER_RANGE ("MTU", zif->rtadv.AdvLinkMTU, argv[3]->arg, 1, 65535);
return CMD_SUCCESS;
}
/*
* CHECK ME - The following ALIASes need to be implemented in this DEFUN
* "no ipv6 nd mtu <1-65535>",
* NO_STR
* "Interface IPv6 config commands\n"
* "Neighbor discovery\n"
* "Advertised MTU\n"
* "MTU in bytes\n"
*
*/
DEFUN (no_ipv6_nd_mtu,
no_ipv6_nd_mtu_cmd,
"no ipv6 nd mtu",
NO_STR
"Interface IPv6 config commands\n"
"Neighbor discovery\n"
"Advertised MTU\n")
{
struct interface *ifp = (struct interface *) vty->index;
struct zebra_if *zif = ifp->info;
zif->rtadv.AdvLinkMTU = 0;
return CMD_SUCCESS;
}
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/* Write configuration about router advertisement. */
void
rtadv_config_write (struct vty *vty, struct interface *ifp)
{
struct zebra_if *zif;
struct listnode *node;
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struct rtadv_prefix *rprefix;
char buf[PREFIX_STRLEN];
int interval;
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zif = ifp->info;
if (!(if_is_loopback (ifp) ||
CHECK_FLAG(ifp->status, ZEBRA_INTERFACE_VRF_LOOPBACK)))
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{
if (zif->rtadv.AdvSendAdvertisements)
vty_out (vty, " no ipv6 nd suppress-ra%s", VTY_NEWLINE);
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}
interval = zif->rtadv.MaxRtrAdvInterval;
if (interval % 1000)
vty_out (vty, " ipv6 nd ra-interval msec %d%s", interval,
VTY_NEWLINE);
else
if (interval != RTADV_MAX_RTR_ADV_INTERVAL)
vty_out (vty, " ipv6 nd ra-interval %d%s", interval / 1000,
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VTY_NEWLINE);
if (zif->rtadv.AdvIntervalOption)
vty_out (vty, " ipv6 nd adv-interval-option%s", VTY_NEWLINE);
if (zif->rtadv.AdvDefaultLifetime != -1)
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vty_out (vty, " ipv6 nd ra-lifetime %d%s", zif->rtadv.AdvDefaultLifetime,
VTY_NEWLINE);
if (zif->rtadv.HomeAgentPreference)
vty_out (vty, " ipv6 nd home-agent-preference %u%s",
zif->rtadv.HomeAgentPreference, VTY_NEWLINE);
if (zif->rtadv.HomeAgentLifetime != -1)
vty_out (vty, " ipv6 nd home-agent-lifetime %u%s",
zif->rtadv.HomeAgentLifetime, VTY_NEWLINE);
if (zif->rtadv.AdvHomeAgentFlag)
vty_out (vty, " ipv6 nd home-agent-config-flag%s", VTY_NEWLINE);
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if (zif->rtadv.AdvReachableTime)
vty_out (vty, " ipv6 nd reachable-time %d%s", zif->rtadv.AdvReachableTime,
VTY_NEWLINE);
if (zif->rtadv.AdvManagedFlag)
vty_out (vty, " ipv6 nd managed-config-flag%s", VTY_NEWLINE);
if (zif->rtadv.AdvOtherConfigFlag)
vty_out (vty, " ipv6 nd other-config-flag%s", VTY_NEWLINE);
if (zif->rtadv.DefaultPreference != RTADV_PREF_MEDIUM)
vty_out (vty, " ipv6 nd router-preference %s%s",
rtadv_pref_strs[zif->rtadv.DefaultPreference],
VTY_NEWLINE);
if (zif->rtadv.AdvLinkMTU)
vty_out (vty, " ipv6 nd mtu %d%s", zif->rtadv.AdvLinkMTU, VTY_NEWLINE);
for (ALL_LIST_ELEMENTS_RO (zif->rtadv.AdvPrefixList, node, rprefix))
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{
vty_out (vty, " ipv6 nd prefix %s",
prefix2str (&rprefix->prefix, buf, sizeof(buf)));
if ((rprefix->AdvValidLifetime != RTADV_VALID_LIFETIME) ||
(rprefix->AdvPreferredLifetime != RTADV_PREFERRED_LIFETIME))
{
if (rprefix->AdvValidLifetime == UINT32_MAX)
vty_out (vty, " infinite");
else
vty_out (vty, " %u", rprefix->AdvValidLifetime);
if (rprefix->AdvPreferredLifetime == UINT32_MAX)
vty_out (vty, " infinite");
else
vty_out (vty, " %u", rprefix->AdvPreferredLifetime);
}
if (!rprefix->AdvOnLinkFlag)
vty_out (vty, " off-link");
if (!rprefix->AdvAutonomousFlag)
vty_out (vty, " no-autoconfig");
if (rprefix->AdvRouterAddressFlag)
vty_out (vty, " router-address");
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vty_out (vty, "%s", VTY_NEWLINE);
}
}
static void
rtadv_event (struct zebra_ns *zns, enum rtadv_event event, int val)
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{
struct rtadv *rtadv = &zns->rtadv;
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switch (event)
{
case RTADV_START:
if (! rtadv->ra_read)
rtadv->ra_read = thread_add_read (zebrad.master, rtadv_read, zns, val);
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if (! rtadv->ra_timer)
rtadv->ra_timer = thread_add_event (zebrad.master, rtadv_timer,
zns, 0);
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break;
case RTADV_STOP:
if (rtadv->ra_timer)
{
thread_cancel (rtadv->ra_timer);
rtadv->ra_timer = NULL;
}
if (rtadv->ra_read)
{
thread_cancel (rtadv->ra_read);
rtadv->ra_read = NULL;
}
break;
case RTADV_TIMER:
if (! rtadv->ra_timer)
rtadv->ra_timer = thread_add_timer (zebrad.master, rtadv_timer, zns,
val);
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break;
case RTADV_TIMER_MSEC:
if (! rtadv->ra_timer)
rtadv->ra_timer = thread_add_timer_msec (zebrad.master, rtadv_timer,
zns, val);
break;
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case RTADV_READ:
if (! rtadv->ra_read)
rtadv->ra_read = thread_add_read (zebrad.master, rtadv_read, zns, val);
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break;
default:
break;
}
return;
}
void
rtadv_init (struct zebra_ns *zns)
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{
zns->rtadv.sock = rtadv_make_socket ();
}
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void
rtadv_terminate (struct zebra_ns *zns)
{
rtadv_event (zns, RTADV_STOP, 0);
if (zns->rtadv.sock >= 0)
{
close (zns->rtadv.sock);
zns->rtadv.sock = -1;
}
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zns->rtadv.adv_if_count = 0;
zns->rtadv.adv_msec_if_count = 0;
}
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void
rtadv_cmd_init (void)
{
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install_element (INTERFACE_NODE, &ipv6_nd_suppress_ra_cmd);
install_element (INTERFACE_NODE, &no_ipv6_nd_suppress_ra_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_ra_interval_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_ra_interval_msec_cmd);
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install_element (INTERFACE_NODE, &no_ipv6_nd_ra_interval_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_ra_lifetime_cmd);
install_element (INTERFACE_NODE, &no_ipv6_nd_ra_lifetime_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_reachable_time_cmd);
install_element (INTERFACE_NODE, &no_ipv6_nd_reachable_time_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_managed_config_flag_cmd);
install_element (INTERFACE_NODE, &no_ipv6_nd_managed_config_flag_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_other_config_flag_cmd);
install_element (INTERFACE_NODE, &no_ipv6_nd_other_config_flag_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_homeagent_config_flag_cmd);
install_element (INTERFACE_NODE, &no_ipv6_nd_homeagent_config_flag_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_homeagent_preference_cmd);
install_element (INTERFACE_NODE, &no_ipv6_nd_homeagent_preference_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_homeagent_lifetime_cmd);
install_element (INTERFACE_NODE, &no_ipv6_nd_homeagent_lifetime_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_adv_interval_config_option_cmd);
install_element (INTERFACE_NODE, &no_ipv6_nd_adv_interval_config_option_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_prefix_cmd);
install_element (INTERFACE_NODE, &no_ipv6_nd_prefix_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_router_preference_cmd);
install_element (INTERFACE_NODE, &no_ipv6_nd_router_preference_cmd);
install_element (INTERFACE_NODE, &ipv6_nd_mtu_cmd);
install_element (INTERFACE_NODE, &no_ipv6_nd_mtu_cmd);
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}
static int
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if_join_all_router (int sock, struct interface *ifp)
{
int ret;
struct ipv6_mreq mreq;
memset (&mreq, 0, sizeof (struct ipv6_mreq));
inet_pton (AF_INET6, ALLROUTER, &mreq.ipv6mr_multiaddr);
mreq.ipv6mr_interface = ifp->ifindex;
ret = setsockopt (sock, IPPROTO_IPV6, IPV6_JOIN_GROUP,
(char *) &mreq, sizeof mreq);
if (ret < 0)
zlog_warn ("%s(%u): Failed to join group, socket %u error %s",
ifp->name, ifp->ifindex, sock, safe_strerror (errno));
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if (IS_ZEBRA_DEBUG_EVENT)
zlog_debug ("%s(%u): Join All-Routers multicast group, socket %u",
ifp->name, ifp->ifindex, sock);
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return 0;
}
static int
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if_leave_all_router (int sock, struct interface *ifp)
{
int ret;
struct ipv6_mreq mreq;
memset (&mreq, 0, sizeof (struct ipv6_mreq));
inet_pton (AF_INET6, ALLROUTER, &mreq.ipv6mr_multiaddr);
mreq.ipv6mr_interface = ifp->ifindex;
ret = setsockopt (sock, IPPROTO_IPV6, IPV6_LEAVE_GROUP,
(char *) &mreq, sizeof mreq);
if (ret < 0)
zlog_warn ("%s(%u): Failed to leave group, socket %u error %s",
ifp->name, ifp->ifindex, sock,safe_strerror (errno));
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if (IS_ZEBRA_DEBUG_EVENT)
zlog_debug ("%s(%u): Leave All-Routers multicast group, socket %u",
ifp->name, ifp->ifindex, sock);
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return 0;
}
#else
void
rtadv_init (struct zebra_ns *zns)
{
/* Empty.*/;
}
void
rtadv_terminate (struct zebra_ns *zns)
{
/* Empty.*/;
}
void
rtadv_cmd_init (void)
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{
/* Empty.*/;
}
#endif /* HAVE_RTADV && HAVE_IPV6 */